加密
磁盘加密理论
炸薯条
磁盘加密硬件
密码学
解码方法
高级加密标准
40位加密
计算机科学
计算机硬件
56位加密
计算机安全
电信
算法
公钥密码术
基于属性的加密
作者
Shuai Wan,Kening Qu,Yangyang Shi,Zhe Li,Zejing Wang,Chenjie Dai,Jiao Tang,Zhongyang Li
出处
期刊:ACS Nano
[American Chemical Society]
日期:2024-07-03
卷期号:18 (28): 18693-18700
标识
DOI:10.1021/acsnano.4c05724
摘要
Facing the challenge of information security in the current era of information technology, optical encryption based on metasurfaces presents a promising solution to this issue. However, most metasurface-based encryption techniques rely on limited decoding keys and struggle to achieve multidimensional complex encryption. It hinders the progress of optical storage capacity and puts encryption security at a disclosing risk. Here, we propose and experimentally demonstrate a multidimensional encryption system based on chip-integrated metasurfaces that successfully incorporates the simultaneous manipulation of three-dimensional optical parameters, including wavelength, direction, and polarization. Hence, up to eight-channel augmented reality (AR) holograms are concealed by near- and far-field fused encryption, which can only be extracted by correctly providing the three-dimensional decoding keys and then vividly exhibit to the authorizer with low crosstalk, high definition, and no zero-order speckle noise. We envision that the miniature chip-integrated metasurface strategy for multidimensional encryption functionalities promises a feasible route toward the encryption capacity and information security enhancement of the anticounterfeiting performance and optically cryptographic storage.
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